3 Part Technical Synthesis Report_ The Recursive Harmonic Codex (RHC) and Unified Information Manifolds

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Auteur principal: reynolds, kristian
Format: Recurso digital
Langue:anglais
Publié: Zenodo 2026
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_version_ 1866901392337141760
author reynolds, kristian
author_facet reynolds, kristian
contents <p>The Recursive Harmonic Codex (RHC) proposes a unified information‑theoretic framework in which physical, computational, and observational processes are modeled as phase‑locked transformations on a quaternionic manifold. The system is defined on a 24‑node Difference‑7 lattice that encodes discrete–continuous coupling between real and imaginary components of the information field. Central to the framework are the Fold Operator F=i/2, which governs state‑collapse through imaginary rotation, and the Null Ledger identity \Sigma (\mathrm{Re}+\mathrm{Im})=0, which enforces global information conservation. The model introduces a closure identity 10i=1 arising from a specific 4×4 lattice traversal, and employs a recursive parity relation to maintain temporal consistency across the manifold. The RHC further interprets mass as imaginary impedance m=i, enabling a reversible mapping between potential and observable states. This report formalizes the mathematical structure of the RHC, outlines its computational embodiment in the Universal Reality Encoder Virtual Machine (URE‑VM), and identifies claims requiring rigorous derivation for future validation</p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_18774227
institution Zenodo
language eng
publishDate 2026
publisher Zenodo
record_format zenodo
spellingShingle 3 Part Technical Synthesis Report_ The Recursive Harmonic Codex (RHC) and Unified Information Manifolds
reynolds, kristian
Physics
Physics
Mathematical physics
Theoretical physics
Information Theory
Information Theory/history
Dynamical systems
Quantum field theory
Artificial intelligence
Artificial Intelligence
<p>The Recursive Harmonic Codex (RHC) proposes a unified information‑theoretic framework in which physical, computational, and observational processes are modeled as phase‑locked transformations on a quaternionic manifold. The system is defined on a 24‑node Difference‑7 lattice that encodes discrete–continuous coupling between real and imaginary components of the information field. Central to the framework are the Fold Operator F=i/2, which governs state‑collapse through imaginary rotation, and the Null Ledger identity \Sigma (\mathrm{Re}+\mathrm{Im})=0, which enforces global information conservation. The model introduces a closure identity 10i=1 arising from a specific 4×4 lattice traversal, and employs a recursive parity relation to maintain temporal consistency across the manifold. The RHC further interprets mass as imaginary impedance m=i, enabling a reversible mapping between potential and observable states. This report formalizes the mathematical structure of the RHC, outlines its computational embodiment in the Universal Reality Encoder Virtual Machine (URE‑VM), and identifies claims requiring rigorous derivation for future validation</p>
title 3 Part Technical Synthesis Report_ The Recursive Harmonic Codex (RHC) and Unified Information Manifolds
topic Physics
Physics
Mathematical physics
Theoretical physics
Information Theory
Information Theory/history
Dynamical systems
Quantum field theory
Artificial intelligence
Artificial Intelligence
url https://doi.org/10.5281/zenodo.18774227